Numerical Simulation and Optimization Experiment Research of High-Pressure Water Jet Descaling Nozzle
Shao Zhonglian
Abstract
Shao Zhonglian
Abstract
By using FLUENT,a numerical simulation analysis is respectively conducted on conical,cylindrical and conical straight nozzle's water jet flow field of which are currently widely used in industrial pipe high pressure jet descaling. By orthogonal experiments to the best jet nozzle type of flow field characteristics,its optimum structure size was gained. The results show that: the conical straight nozzle's water jet flow field characteristics are the best,fluid velocity increases rapidly in the nozzle's convergent section,uniform flow nuclear zone appears at the horizontal transition phase,in the radial direction the radial velocity without significant fluctuations is more conducive for descaling. When straight taper length L of the nozzle is 17 mm,the length l of the horizontal transition section is 6 mm,the nozzle diameter d is 1 mm and the contraction angle α is 16°,the effect of descaling is the best.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
By using FLUENT,a numerical simulation analysis is respectively conducted on conical,cylindrical and conical straight nozzle's water jet flow field of which are currently widely used in industrial pipe high pressure jet descaling. By orthogonal experiments to the best jet nozzle type of flow field characteristics,its optimum structure size was gained. The results show that: the conical straight nozzle's water jet flow field characteristics are the best,fluid velocity increases rapidly in the nozzle's convergent section,uniform flow nuclear zone appears at the horizontal transition phase,in the radial direction the radial velocity without significant fluctuations is more conducive for descaling. When straight taper length L of the nozzle is 17 mm,the length l of the horizontal transition section is 6 mm,the nozzle diameter d is 1 mm and the contraction angle α is 16°,the effect of descaling is the best.
Key concepts: Nozzle, Conical surface, Mechanics, Jet (fluid), Fluent, Discharge coefficient, Materials science, Computer simulation